Issue 9, 2011

Mean-field theory of a nematic liquid crystal doped with anisotropic nanoparticles

Abstract

In the framework of molecular mean-field theory we study the effect of nanoparticles embedded in nematic liquid crystals on the orientational ordering and nematic–isotropic phase transition. We show that spherically isotropic nanoparticles effectively dilute the liquid crystal medium and decrease the nematic–isotropic transition temperature. At the same time, anisotropic nanoparticles become aligned by the nematic host and, reciprocally, improve the liquid crystal alignment. The theory clarifies the microscopic origin of the experimentally observed shift of the isotropic–nematic phase transition and an improvement of the nematic order in composite materials. A considerable softening of the first order nematic–isotropic transition caused by strongly anisotropic nanoparticles is also predicted.

Graphical abstract: Mean-field theory of a nematic liquid crystal doped with anisotropic nanoparticles

Article information

Article type
Paper
Submitted
01 Dec 2010
Accepted
08 Feb 2011
First published
10 Mar 2011

Soft Matter, 2011,7, 4348-4356

Mean-field theory of a nematic liquid crystal doped with anisotropic nanoparticles

M. V. Gorkunov and M. A. Osipov, Soft Matter, 2011, 7, 4348 DOI: 10.1039/C0SM01398F

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